Asset Details
MbrlCatalogueTitleDetail
Do you wish to reserve the book?
Coupling the Relationship between Land Subsidence and Groundwater Level, Ground Fissures in Xi’an City Using Multi-Orbit and Multi-Temporal InSAR
by
Yang, Changjiang
, Hu, Jun
, Xu, Bei
, Gui, Rong
, Zhang, Xing
, Yang, Qiuhong
, Cheng, Zhengfeng
, Xiong, Tao
in
angular distortion
/ Aquifers
/ Artificial satellites in remote sensing
/ China
/ Cities
/ Comparative analysis
/ Construction
/ Data processing
/ Datasets
/ Deformation
/ Deformation analysis
/ Dimensional analysis
/ Distribution
/ Environmental aspects
/ Fault lines
/ Fissures (geology)
/ Forecasts and trends
/ Geology
/ Groundwater
/ Groundwater data
/ Groundwater depletion
/ Groundwater flow
/ groundwater level
/ Groundwater levels
/ humans
/ Infrastructure
/ Lag time
/ Land subsidence
/ Measurement
/ multi-dimensional deformation
/ Remote sensing
/ Satellites
/ soil
/ Soil conditions
/ Soil layers
/ Subsidence
/ Subsidences (Earth movements)
/ Synthetic aperture radar
/ Tectonics
/ Time series
/ time series analysis
/ time-series displacements
/ Uplift
/ Urban areas
/ Verification
/ Water monitoring
/ water shortages
/ Water table
/ Xi’an
2023
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
Coupling the Relationship between Land Subsidence and Groundwater Level, Ground Fissures in Xi’an City Using Multi-Orbit and Multi-Temporal InSAR
by
Yang, Changjiang
, Hu, Jun
, Xu, Bei
, Gui, Rong
, Zhang, Xing
, Yang, Qiuhong
, Cheng, Zhengfeng
, Xiong, Tao
in
angular distortion
/ Aquifers
/ Artificial satellites in remote sensing
/ China
/ Cities
/ Comparative analysis
/ Construction
/ Data processing
/ Datasets
/ Deformation
/ Deformation analysis
/ Dimensional analysis
/ Distribution
/ Environmental aspects
/ Fault lines
/ Fissures (geology)
/ Forecasts and trends
/ Geology
/ Groundwater
/ Groundwater data
/ Groundwater depletion
/ Groundwater flow
/ groundwater level
/ Groundwater levels
/ humans
/ Infrastructure
/ Lag time
/ Land subsidence
/ Measurement
/ multi-dimensional deformation
/ Remote sensing
/ Satellites
/ soil
/ Soil conditions
/ Soil layers
/ Subsidence
/ Subsidences (Earth movements)
/ Synthetic aperture radar
/ Tectonics
/ Time series
/ time series analysis
/ time-series displacements
/ Uplift
/ Urban areas
/ Verification
/ Water monitoring
/ water shortages
/ Water table
/ Xi’an
2023
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Coupling the Relationship between Land Subsidence and Groundwater Level, Ground Fissures in Xi’an City Using Multi-Orbit and Multi-Temporal InSAR
by
Yang, Changjiang
, Hu, Jun
, Xu, Bei
, Gui, Rong
, Zhang, Xing
, Yang, Qiuhong
, Cheng, Zhengfeng
, Xiong, Tao
in
angular distortion
/ Aquifers
/ Artificial satellites in remote sensing
/ China
/ Cities
/ Comparative analysis
/ Construction
/ Data processing
/ Datasets
/ Deformation
/ Deformation analysis
/ Dimensional analysis
/ Distribution
/ Environmental aspects
/ Fault lines
/ Fissures (geology)
/ Forecasts and trends
/ Geology
/ Groundwater
/ Groundwater data
/ Groundwater depletion
/ Groundwater flow
/ groundwater level
/ Groundwater levels
/ humans
/ Infrastructure
/ Lag time
/ Land subsidence
/ Measurement
/ multi-dimensional deformation
/ Remote sensing
/ Satellites
/ soil
/ Soil conditions
/ Soil layers
/ Subsidence
/ Subsidences (Earth movements)
/ Synthetic aperture radar
/ Tectonics
/ Time series
/ time series analysis
/ time-series displacements
/ Uplift
/ Urban areas
/ Verification
/ Water monitoring
/ water shortages
/ Water table
/ Xi’an
2023
Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
Coupling the Relationship between Land Subsidence and Groundwater Level, Ground Fissures in Xi’an City Using Multi-Orbit and Multi-Temporal InSAR
Journal Article
Coupling the Relationship between Land Subsidence and Groundwater Level, Ground Fissures in Xi’an City Using Multi-Orbit and Multi-Temporal InSAR
2023
Request Book From Autostore
and Choose the Collection Method
Overview
The Xi’an region of China has been suffering from groundwater depletion, ground fissure hazards, and surface subsidence for a long time. Due to the complex tectonics and frequent human and natural activities, land deformation in the region is aggravated, posing a threat to infrastructure and human life. This study adopted the multi-orbit and multi-temporal InSAR technology to measure multi-dimensional displacements and time-series displacements in Xi’an City. Through the multi-dimensional deformation verification, it was found that the control of groundwater flow direction by ground fissures is the cause of horizontal deformation. On the contrary, the flow direction of groundwater from west to east was inferred using multi-dimensional deformation. Further analysis was performed by calculating the deformation gradient of the cumulative deformation to obtain differential land subsidence and angular distortions, and it was quantitatively determined that the threshold for the generation of ground fissures caused by differential subsidence is 1/500. Then, through the mutual verification of the time series data and the groundwater level, a positive correlation was obtained. However, due to the inconsistent geological conditions and soil layers at the monitoring positions of Well 2 and Well 3, the lag time was 64 days and 4 days, respectively. Finally, the relationship between the surface deformation and the groundwater in the sustained uplift areas was explored. The Well 1 groundwater-level data with a monitoring period of 22 years and the corresponding monitoring points’ time series data were modeled; it was concluded that, in the future, the groundwater level will continue to rise and surface deformation will mainly increase, without a slowing trend. Therefore, research on the impact of surface uplift on infrastructure should be strengthened. By quantifying the relationship between land subsidence, ground fissures, and the groundwater level in Xi’an, the results of this study provide a reference for groundwater monitoring and management.
Publisher
MDPI AG
Subject
MBRLCatalogueRelatedBooks
Related Items
Related Items
We currently cannot retrieve any items related to this title. Kindly check back at a later time.
This website uses cookies to ensure you get the best experience on our website.